In the course of a method for handling a workpiece having at least one through-opening, at least one suction element and the workpiece are placed against each other to form a suction chamber. A vacuum is generated in the suction chamber in order to fix the workpiece and the suction element to each other with a holding force for subsequent manipulation of the workpiece. The workpiece and the suction element are fixed to each other with a holding force by at least partially providing at least one through-opening of the workpiece opening into the suction chamber with a covering in order to reduce the flow of air through the through-opening to the suction chamber after the vacuum has been generated. A workpiece handling system is used to carry out the above-mentioned method.
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1. A method for handling a workpiece having at least one through-opening and being provided as one of a plurality of workpieces in a stack, the method comprising:
providing at least one through-opening of the workpiece with a covering prior to, during, or after removal of the workpiece from the stack;
placing at least one suction element and the workpiece against each other to form a suction chamber;
drawing a vacuum in the suction chamber to fix the workpiece and the suction element to each other with a holding force for subsequent manipulation of the workpiece;
wherein the covering is configured to reduce the flow of air through the through-opening to the suction chamber sufficiently so that the vacuum gives rise to the holding force; and
feeding the workpiece to a processing device that comprises a bending device or a cutting device, after the workpiece and the suction element have been fixed to each other with the holding force.
7. A system for handling a workpiece having at least one through-opening, the system comprising:
a destacking device for removing the workpiece from a stack;
a covering unit associated with the destacking device;
a suction element configured to form a suction chamber when placed against the workpiece;
a vacuum generator configured to draw a vacuum in the suction chamber to fix the workpiece and the suction element to each other with a holding force for subsequent manipulation of the workpiece;
wherein the covering unit is configured to apply a covering to the workpiece before, during, or after the workpiece is removed from the stack by the destacking device to at least partially cover the at least one through-opening to reduce the flow of air through the through-opening to the suction chamber sufficiently so that the vacuum gives rise to the holding force; and
a numerical control unit configured to provide coordinated control to the system.
3. A method according to
5. A method according to
6. A method according to
11. A system according to
13. A system according to
14. A method according to
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This application is a continuation of, and claims priority under 35 U.S.C. §120 to PCT/EP2007/003461, filed on Apr. 20, 2007, and designating the U.S., and claims priority under 35 U.S.C. §119 from German application 10 2006 019 767.4, filed Apr. 28, 2006. Both of these priority applications are hereby incorporated by reference in their entirety.
The invention relates to methods and systems for handling workpieces, and particularly for handling workpieces having at least one through-opening.
Methods and systems that use suction pick-up devices to manipulate workpieces are frequently used in the processing of sheet metal. In that application, metal sheets have to be fed, for example, from a stack of metal sheets to a processing machine. For this, at least one suction element is applied to the uppermost metal sheet in the stack of metal sheets to form a suction chamber. By generating a vacuum in the suction chamber, the metal sheet and the suction element are fixed to each other. The fixed metal sheet can then be fed, for example by means of a manipulator carrying the suction element, to a sheet metal processing machine. The metal sheets to be handled often have a plurality of through-openings. If a suction element is applied to such a perforated metal sheet, it may be that at least one through-opening opens into the suction chamber so formed. On applying a vacuum to the suction chamber, it is not possible in that case to form in the suction chamber a vacuum sufficient to securely fix the workpiece and the suction element to each other.
DE 36 37 567 describes a method in which a plurality of suction elements are applied to a workpiece having through-openings. By means of a shut-off device of the individual suction elements, only those suction elements which are not situated over a through-opening are connected to a vacuum source. Even with a vacuum generator of conventional capacity, therefore, a sufficient vacuum will be generated at least in the suction chambers situated over a closed surface of the workpiece. The use of this method is generally restricted, however, to workpieces having sufficiently large regions without any through-openings.
In one aspect, the invention features a method for handling a workpiece having at least one through-opening. The method includes providing at least one through opening of the workpiece with a covering, placing at least one suction element and the workpiece against each other, and drawing a vacuum in the suction chamber to fix the workpiece and the suction element to each other with a holding force for subsequent manipulation of the workpiece. The covering is configured to reduce the flow of air through the through-opening to the suction chamber sufficiently so that the vacuum gives rise to the holding force.
Thus, at least one through-opening of the workpiece opening into a suction chamber is at least partially provided with a covering in order to reduce the flow of air through the through-opening to the suction chamber after a vacuum has been generated in the suction chamber. This ensures that a vacuum sufficient to fix the workpiece and the suction element to each other with a holding force is generated in the suction chamber. By means of the covering of the through-opening, the flowing of air through the through-opening into the suction chamber after a vacuum has been generated in the suction chamber can be adequately avoided. The workpiece thus remains securely fixed to the suction element during subsequent manipulation of the workpiece. The at least one through-opening of the workpiece may be provided with the covering either on the side of the workpiece towards the suction element or on the side of the workpiece remote from the suction element, or on both sides.
In some implementations, the method is used to handle a flat workpiece. In such cases, when configuring or applying the covering it is not necessary to take a particular shape of the workpiece surface into consideration. The methods disclosed herein serve especially advantageously for handling a perforated metal sheet. A perforated metal sheet is a metal sheet having a plurality of through-openings perpendicular to the principal plane of the workpiece.
In some implementations, the covering is detachably joined to the workpiece. Accordingly, the covering can be removed from the workpiece, e.g., after processing. An especially simple and flexible method is obtained if the covering is adhesively bonded to a side of the workpiece.
The through-opening can be provided with a planar covering. A planar covering has the advantage that it is able to cover a large region of a side of the workpiece, and hence where applicable a large number of through-openings, while requiring little space. If a film is used as the planar covering, it additionally has the advantage that it can be fitted flexibly to the workpiece.
In a variant that saves on material, only that region of the workpiece to which the suction elements are applied is provided with a covering. Alternatively, a side of the workpiece can be substantially completely provided with a covering.
In the case of workpieces arranged in stacked form, the at least one through-opening of a workpiece can be at least partially provided with the covering during stacking. This can be done in an especially simple manner by alternately stacking the workpieces with intermediate layers serving as coverings. In the case where the workpieces are provided in stacked form without coverings, the at least one through-opening of the workpiece can be at least partially provided with a covering before or during or after destacking of the workpiece. For example, the uppermost workpiece on a stack can first be provided with a covering on the upper side of the workpiece in order for the workpiece to be subsequently taken up by suction and removed from the stack with greater reliability. For reasons of time it may also be advantageous to provide the workpiece with the covering at the same time as it is being pushed off the stack. Alternatively, the workpiece may be removed from the stack, for example by an ejection unit, before it is provided with a covering. In that case, the workpiece is more accessible for application of the covering.
On subsequently being manipulated following the fixing of the suction element and workpiece to each other, the workpiece provided with a covering can be fed to a processing device. In this case, the covering may advantageously serve to enable the workpiece to be processed while also protecting the workpiece is protected from undesirable adverse effects, such as scratches or impressions.
In some implementations, the mechanical arrangement includes a covering unit configured to provide the at least one through-opening at least partially with a covering. The level of automation of the mechanical arrangement is thereby increased. The covering unit may be disposed at a destacking unit. This results in a compact mechanical arrangement for handling workpieces.
The details of one or more embodiments of the invention are set forth in the accompanying drawings and the description below. Other features and advantages of the invention will be apparent from the description and drawings, and from the claims.
A covering in the form of a film 4 is adhesively bonded to the workpiece upper side 2 of the perforated metal sheet 1. The film 4 consists of a substantially air-impermeable plastics material. The form and composition of the covering may in principle, however, be adapted to the particular requirements. It is merely necessary to ensure that the flow of air through the through-openings 3 can be reduced by means of the covering. One inexpensive variant is a covering of paper.
In the case illustrated, the film 4 covers the workpiece upper side 2 substantially completely. The film 4 is shown in
In addition,
As illustrated schematically in
When, on subsequent manipulation, a perforated metal sheet 1 provided with a film 4 on the workpiece upper side 2 in accordance with
The individual steps of the method carried out with the mechanical arrangement 10 shown in
At the start, the perforated metal sheet 1 lying uppermost on the stack 12 is removed from the stack 12 by the destacking device 11. For this, the perforated metal sheet 1 is pushed off the stack 12 by an ejecting cylinder 16 through a gap 17 and into the covering unit 13. The width of the gap 17 is matched to the thickness of the perforated metal sheet 1 in such a way that only a single perforated metal sheet 1 can ever pass through the gap 17.
In the covering unit 13, the perforated metal sheet 1 is provided with a covering. In the illustrative embodiment shown, the covering unit 13 is a film coating unit. In the film coating unit, a self-adhesive, stretchable and highly flexible film 4 of plastics material is drawn by means of pressure rollers 18 from film rolls 19 and pressed by the pressure rollers 18 onto the perforated metal sheet 1. In that operation, the film is adhesively bonded both to the workpiece upper side 2 of the perforated metal sheet 1 and to the workpiece lower side 9 of the perforated metal sheet 1. In some implementations, however, the film is applied only to the workpiece upper side 2 or only to the workpiece lower side 9. The film-coated perforated metal sheets 1 are then taken to a collection position 20. There, they are supported on support rollers 21.
In the illustrative embodiment shown in
To enable fully automatic operation of the mechanical arrangement 10, a numerical control unit 23 is provided which provides for coordinated operation of the various units.
If the processing device 15 is a bending unit or a cutting unit, for example, the film 4 may provide further advantages. A problem that frequently occurs in the processing of workpieces by bending units or cutting units is that undesirable scratches or impressions are made on the workpiece by the processing tools or other parts of the machine. By virtue of the covering joined to the workpiece, processing can be carried out while taking care of the material, since the covering protects the workpiece from scratches and impressions.
As a departure from the mechanical arrangement 10 illustrated in
After processing of the workpiece, the covering can be removed from the workpiece. This may be done manually by an operator or may also be carried out in an automated manner by means of a removal unit of the mechanical arrangement.
A second mechanical arrangement 24 for handling a perforated metal sheet 1 is illustrated in
The sequence of the method for handling a workpiece with the mechanical arrangement 24 shown in
As in the case of the mechanical arrangement 10 shown in
Other embodiments are within the scope of the following claims.
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Oct 14 2008 | TRUMPF Werkzeugmaschinen GmbH + Co. KG | (assignment on the face of the patent) | / | |||
Nov 11 2008 | KILIAN, FRIEDRICH | TRUMPF WERKZEUGMASCHINEN GMBH + CO KG | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 021931 | /0417 |
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